首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Application of Multi-Species Microbial Bioassay to Assess the Effects of Engineered Nanoparticles in the Aquatic Environment: Potential of a Luminous Microbial Array for Toxicity Risk Assessment (LumiMARA) on Testing for Surface-Coated Silver Nanoparticles
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Application of Multi-Species Microbial Bioassay to Assess the Effects of Engineered Nanoparticles in the Aquatic Environment: Potential of a Luminous Microbial Array for Toxicity Risk Assessment (LumiMARA) on Testing for Surface-Coated Silver Nanoparticles

机译:应用多种微生物生物测定评估工程纳米粒子在水生环境中的作用:发光微生物阵列的毒性风险评估(LumiMARA)在测试表面涂层银纳米粒子方面的潜力

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摘要

Four different manufactured surface-coated silver nanoparticles (AgNPs) with coating of citrate, tannic acid, polyethylene glycol, and branched polyethylenimine were used in this study. The toxicity of surface-coated AgNPs was evaluated by a luminous microbial array for toxicity risk assessment (LumiMARA) using multi-species of luminescent bacteria. The salt stability of four different AgNPs was measured by UV absorbance at 400 nm wavelength, and different surface-charged AgNPs in combination with bacteria were observed using scanning electron microscopy (SEM). Both branched polyethylenimine (BPEI)-AgNPs and polyethylene glycol (PEG)-AgNPs were shown to be stable with 2% NaCl (non-aggregation), whereas both citrate (Cit)-AgNPs and tannic acid (Tan)-AgNPs rapidly aggregated in 2% NaCl solution. The values of the 50% effective concentration (EC50) for BPEI-AgNPs in marine bacteria strains (1.57 to 5.19 mg/L) were lower than those for the other surface-coated AgNPs (i.e., Cit-AgNPs, Tan-AgNPs, and PEG-AgNPs). It appears that the toxicity of AgNPs could be activated by the interaction of positively charged AgNPs with the negatively charged bacterial cell wall from the results of LumiMARA. LumiMARA for toxicity screening has advantageous compared to a single-species bioassay and is applicable for environmental samples as displaying ranges of assessment results.
机译:在这项研究中,使用了四种不同的带有柠檬酸盐,鞣酸,聚乙二醇和支链聚乙烯亚胺涂层的人造银纳米颗粒(AgNPs)。使用发光细菌的多种物种,通过发光微生物阵列评估表面涂层的AgNPs的毒性,以进行毒性风险评估(LumiMARA)。通过400nm波长的UV吸收来测量四种不同AgNP的盐稳定性,并且使用扫描电子显微镜(SEM)观察到与细菌​​结合的不同表面带电AgNP。支链聚乙烯亚胺(BPEI)-AgNPs和聚乙二醇(PEG)-AgNPs在2%NaCl(非聚集)下均显示稳定,而柠檬酸盐(Cit)-AgNP和单宁酸(Tan)-AgNPs在2%NaCl中迅速聚集。 2%NaCl溶液。海洋细菌菌株中BPEI-AgNPs的50%有效浓度(EC50)值(1.57至5.19 mg / L)低于其他表面包被的AgNPs(即Cit-AgNPs,Tan-AgNPs和PEG-AgNPs)。从LumiMARA的结果来看,似乎可以通过带正电的AgNP与带负电的细菌细胞壁的相互作用来激活AgNP的毒性。与单一物种生物测定相比,用于毒性筛选的LumiMARA具有优势,并且由于显示评估结果的范围,因此可用于环境样品。

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